Resin anchoring agent finished product storage device

By using a buffer barrier plate and torsion spring structure in the resin anchoring agent storage device, the problem of collision and compression of resin anchoring agent during storage is solved, achieving safe and efficient storage protection.

CN224184814UActive Publication Date: 2026-05-01INNER MONGOLIA ZHONGCHENG HETAI HI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
INNER MONGOLIA ZHONGCHENG HETAI HI TECH CO LTD
Filing Date
2025-05-22
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing methods for storing resin anchors lack effective guidance and protection measures, which makes the resin anchors prone to collision damage and uneven stacking during the stacking process, affecting product quality.

Method used

A resin anchoring agent finished product storage device was designed, which adopts a buffer barrier plate and a torsion spring structure. The buffer barrier plate buffers the resin anchoring agent when it falls, and rotates under the elastic force of the torsion spring to form a diagonal bracing structure to separate the finished resin anchoring agent and avoid collision and compression.

Benefits of technology

This effectively avoids damage from collisions and compression during storage of the finished resin anchoring agent, improving storage safety and product qualification rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a resin anchoring agent finished product storage device, which relates to the technical field of anchoring agent storage and comprises a storage box, the upper end of the storage box is covered with a box cover, a plurality of vertical and uniformly distributed partition plates are fixed in the storage box, and the partition plates divide the storage box into a plurality of storage cavities matched with resin anchoring agent finished products; according to the resin anchoring agent finished product buffering device, through the arrangement of the buffering blocking plate and the first torsional spring, the buffering blocking plate blocks the falling path of a resin anchoring agent finished product, and the buffering effect on the resin anchoring agent finished product is achieved under the elastic force effect of the first torsional spring; and meanwhile, the upper resin anchoring agent finished product and the lower resin anchoring agent finished product can be separated, the situation that the multiple resin anchoring agent finished products entering the storage box are damaged due to mutual extrusion and collision is avoided, the safety of the stored resin anchoring agent finished products is greatly improved, and the qualified rate of the stored products is increased.
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Description

A resin anchoring agent finished product storage device Technical Field

[0001] This utility model relates to the field of anchoring agent storage technology, and in particular to a resin anchoring agent finished product storage device. Background Technology

[0002] Resin anchoring agents are materials used for anchoring and are widely used in construction, mining, and other fields. After production, resin anchoring agents need to be stored.

[0003] Existing storage methods mostly involve conveying resin anchors to the top of a storage box via a conveyor belt, and then dropping them into the storage box for storage. During the stacking process, due to the lack of effective guidance and protective measures, the resin anchors are prone to collisions and damage. Furthermore, uneven stacking can cause the bottom layer of products to be crushed, affecting product quality. Therefore, a finished resin anchor storage device is needed. Summary of the Invention

[0004] The purpose of this application is to provide a resin anchoring agent finished product storage device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this application provides the following technical solution: a resin anchoring agent finished product storage device, including a storage box, a box cover on the upper end of the storage box, and multiple vertical and evenly distributed partitions fixed inside the storage box, the multiple partitions dividing the storage box into multiple storage cavities adapted to the resin anchoring agent finished product.

[0006] The storage box has receiving slots on the opposite side walls and the side walls of the partition. Each receiving slot is rotatably connected to a buffer plate, and the buffer plate is elastically rotatably connected to the inside of the receiving slot through a first torsion spring.

[0007] The buffer barrier is initially horizontal. When the resin anchoring agent product falls, it squeezes the buffer barrier and causes it to rotate downwards into the receiving groove. When there is an adjacent resin anchoring agent product below the buffer barrier, the rear end of the buffer barrier overlaps the upper part of the resin anchoring agent product and forms a diagonal brace, thus separating the upper resin anchoring agent product from the lower resin anchoring agent product.

[0008] Preferably, circular grooves are provided on both sides of the receiving groove, and the circular grooves are located at the upper end of the receiving groove;

[0009] The buffer barrier plate includes a buffer main plate and a barrier sub-plate. A first rotating shaft with both ends rotatably inserted into a circular groove is fixed on the buffer main plate. A first torsion spring is movably sleeved on the outside of the first rotating shaft. The two ends of the first torsion spring are respectively fixed to the side wall of the buffer main plate and the inner side wall of the receiving groove.

[0010] The barrier sub-plate is rotatably connected to the front end of the buffer main plate via a second rotating shaft, and the barrier sub-plate can rotate downwards by a maximum of 90° along the axis of the second rotating shaft.

[0011] Preferably, the buffer main board has a mounting groove at one end near the barrier sub-board, and a connecting block is fixedly embedded in the mounting groove at one end of the barrier sub-board near the buffer main board. The second rotating shaft passes through the connecting block and is rotatably connected to the inner walls of the two sides of the mounting groove at both ends.

[0012] The bottom surface of the mounting slot and the side of the mounting slot near the barrier sub-plate form an opening, while the upper part of the mounting slot forms a closed opening. When the barrier sub-plate and the buffer main plate form a unified plate, the upper side of the connecting block fits tightly against the top of the mounting slot.

[0013] Preferably, the end of the barrier plate furthest from the buffer main plate is formed into a semi-circular end, and a concave arc-shaped notch is formed below the semi-circular end of the barrier plate, the curvature of the arc-shaped notch being consistent with the circumferential curvature of the finished resin anchoring agent.

[0014] Preferably, a second torsion spring is fixed on both sides of the connecting block, the end of the second torsion spring away from the connecting block is fixed to the inner sidewall of the mounting groove, and the second torsion spring is movably sleeved on the second rotating shaft.

[0015] Preferably, a plurality of pads are fixed to the bottom of the storage box, and the plurality of pads are respectively located in a plurality of storage cavities inside the storage box;

[0016] Multiple limiting blocks are fixed to the bottom surface of the box lid, and these limiting blocks are also distributed in multiple storage cavities of the storage box.

[0017] Both the pad and the limiting block have arc-shaped grooves that are compatible with the finished resin anchoring agent.

[0018] In summary, the technical effects and advantages of this utility model are as follows:

[0019] 1. In this utility model, by setting up a buffer barrier plate and a first torsion spring, during the packaging process of the finished resin anchoring agent, the buffer barrier plate blocks the falling path of the finished resin anchoring agent, and the elastic force of the first torsion spring buffers the finished resin anchoring agent, thereby preventing the finished resin anchoring agent from falling directly from a high height and causing collision damage; at the same time, it can separate the finished resin anchoring agent above from the finished resin anchoring agent below, preventing multiple finished resin anchoring agent products entering the storage box from being damaged due to mutual squeezing and collision, greatly improving the safety of storing finished resin anchoring agent products and increasing the product qualification rate after storage.

[0020] 2. In this utility model, by setting the buffer barrier plate as a rotatably connected buffer main plate and barrier sub-plate, and using the second torsion spring, the disadvantage of the buffer main plate and barrier sub-plate being too long to be reset is avoided. At the same time, it can meet the requirement that the overall length of the buffer main plate and barrier sub-plate can form a diagonal bracing structure between two adjacent resin anchor products, so as to separate the two resin anchor products. Attached Figure Description

[0021] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0022] Figure 1 is a three-dimensional structural diagram of this embodiment;

[0023] Figure 2 is a cross-sectional view of the storage box and lid in this embodiment;

[0024] Figure 3 is a partial cross-sectional view of the partition in this embodiment;

[0025] Figure 4 is an enlarged view of the structure at point A in Figure 3.

[0026] In the diagram: 1. Storage box; 11. Pad; 2. Box lid; 21. Limiting block; 3. Partition; 31. Receiving groove; 32. Circular groove; 4. Buffer barrier plate; 41. Buffer main plate; 411. First rotating shaft; 412. Mounting groove; 42. Barrier secondary plate; 421. Arc-shaped notch; 422. Connecting block; 423. Second rotating shaft; 5. First torsion spring; 6. Second torsion spring;

[0027] 100. Finished resin anchoring agent. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] Example: Referring to Figures 1-4, a resin anchoring agent finished product storage device includes a storage box 1, a box cover 2 covering the upper end of the storage box 1, and multiple vertical and evenly distributed partitions 3 fixed inside the storage box 1, which divide the storage box 1 into multiple storage cavities adapted to the resin anchoring agent finished product 100.

[0030] Multiple pads 11 are fixed at the bottom of the storage box 1. The multiple pads 11 are located in multiple storage cavities inside the storage box 1. Multiple limiting blocks 21 are fixed on the bottom surface of the box cover 2. The multiple limiting blocks 21 are also distributed in multiple storage cavities of the storage box 1. Both the pads 11 and the limiting blocks 21 have arc-shaped grooves that are adapted to the resin anchoring agent finished product 100. The pads 11 and the limiting blocks 21 can support and limit the resin anchoring agent finished product 100 at the bottom and top of the storage box 1. In addition, they can also provide elastic cushioning for the resin anchoring agent finished product 100 to prevent the resin anchoring agent finished product 100 from being damaged due to bumps and collisions.

[0031] The storage box 1 has receiving slots 31 on the side walls on both sides and the side walls on both sides of the partition 3. Each receiving slot 31 is rotatably connected to a buffer plate 4. The buffer plate 4 is elastically rotatably connected to the inside of the receiving slot 31 by a first torsion spring 5. The buffer plate 4 is initially horizontal.

[0032] Based on the above structure, during the packaging process of the finished resin anchoring agent 100, the buffer barrier 4 blocks the falling path of the finished resin anchoring agent 100 and, under the elastic force of the first torsion spring 5, cushions the finished resin anchoring agent 100, thereby preventing the finished resin anchoring agent 100 from falling directly from a high height and causing collision damage; when the finished resin anchoring agent 100 falls, it squeezes the buffer barrier 4, causing the buffer barrier 4 to rotate downward and enter the receiving groove 31, thus falling smoothly; when the finished resin anchoring agent 100 is below the buffer barrier 4, the buffer barrier 4 is in the first torsion spring 5. Under the elastic force of the spring 5, the resin anchoring agent product 100 is reset. When there is an adjacent resin anchoring agent product 100 below the buffer barrier plate 4 and it is squeezed by the resin anchoring agent product 100 above, the rear end of the buffer barrier plate 4 rotates and overlaps the upper part of the resin anchoring agent product 100 below and forms a diagonal brace. This separates the resin anchoring agent product 100 above from the resin anchoring agent product 100 below, which can prevent multiple resin anchoring agent products 100 entering the storage box 1 from being damaged due to mutual squeezing and collision. This greatly improves the safety of storing resin anchoring agent products 100 and improves the product qualification rate after storage.

[0033] Furthermore, circular grooves 32 are provided on both sides of the receiving groove 31, and the circular grooves 32 are located at the upper end of the receiving groove 31;

[0034] The buffer barrier plate 4 includes a buffer main plate 41 and a barrier sub-plate 42. A first rotating shaft 411 with both ends rotatably inserted into the circular groove 32 is fixed on the buffer main plate 41. A first torsion spring 5 is movably sleeved on the outside of the first rotating shaft 411. The two ends of the first torsion spring 5 are respectively fixed to the side wall of the buffer main plate 41 and the inner side wall of the receiving groove 31.

[0035] The barrier sub-plate 42 is rotatably connected to the front end of the buffer main plate 41 via the second rotating shaft 423, and the barrier sub-plate 42 can rotate downwards by a maximum of 90° along the axis of the second rotating shaft 423.

[0036] Specifically, the buffer main board 41 has a mounting groove 412 at one end near the barrier sub-board 42, and the barrier sub-board 42 has a connecting block 422 fixedly embedded in the mounting groove 412 at one end near the buffer main board 41. The second rotating shaft 423 is fixedly inserted through the connecting block 422, and the two ends of the second rotating shaft 423 are respectively rotatably connected to the inner walls of the two sides of the mounting groove 412.

[0037] An opening is formed on the bottom surface of the mounting slot 412 and on the side of the mounting slot 412 near the barrier sub-plate 42, and a closed opening is formed at the top of the mounting slot 412. When the barrier sub-plate 42 and the buffer main plate 41 form a unified plate, the upper side of the connecting block 422 is in close contact with the top of the mounting slot 412.

[0038] The connecting block 422 has a second torsion spring 6 fixed on both sides. The end of the second torsion spring 6 away from the connecting block 422 is fixed to the inner wall of the mounting groove 412. The second torsion spring 6 is movably sleeved on the second rotating shaft 423.

[0039] By configuring the buffer barrier plate 4 as a rotatably connected buffer main plate 41 and barrier sub-plate 42, and in conjunction with the use of the second torsion spring 6, when the buffer main plate 41 is squeezed by the falling resin anchoring agent finished product 100, the buffer main plate 41 overcomes the elastic force of the first torsion spring 5, causing the buffer main plate 41 and the barrier sub-plate 42 to rotate synchronously along the first rotating shaft 411, and after rotation, enter the receiving groove 31 to facilitate the falling of the resin anchoring agent finished product 100. When the resin anchoring agent finished product 100 stops falling and stops below the buffer main plate 41, the buffer main plate 41 rotates upward and resets under the elastic force of the first torsion spring 5. This causes the barrier plate 42 to rotate synchronously. When the barrier plate 42 and its upper end abut against the side wall of the resin anchoring agent finished product 100, the barrier plate 42 rotates relative to the buffer main plate 41 along the second rotating shaft 423. This facilitates the reset of the buffer main plate 41 and the barrier plate 42, avoiding the disadvantage that the overall length of the buffer main plate 41 and the barrier plate 42 is too long to reset. At the same time, it can meet the requirement that the overall length of the buffer main plate 41 and the barrier plate 42 can form a diagonal bracing structure between two adjacent resin anchoring agent finished products 100, so as to separate the two resin anchoring agent finished products 100.

[0040] It should be noted that, in order to achieve a good protective effect, the pad 11, the limiting block 21, the buffer main board 41 and the barrier sub-board 42 all adopt a composite board structure with a rigid inner layer and a flexible outer layer (not shown in the figure). That is, the inner side adopts a rigid support plate (such as a hard alloy plate) and the outer side is covered with a flexible layer (such as a latex layer), so that it can achieve both a good buffer protection effect and a good support and limiting effect, thus achieving an excellent storage protection effect.

[0041] It should be further explained that in order to ensure the smooth fall of the resin anchoring agent finished product 100, the elastic force of the first torsion spring 5 needs to be less than half of the weight of the resin anchoring agent finished product 100, so that the two opposing buffer plates 4 can play a corresponding buffering role without affecting the fall of the resin anchoring agent finished product 100.

[0042] The elastic force of the second torsion spring 6 needs to be less than the sum of the torsion of the first torsion spring 5 and the friction between the barrier plate 42 and the resin anchoring agent product 100. This allows the barrier plate 42 to overcome the torsion of the second torsion spring 6 and the friction between the barrier plate 42 and the resin anchoring agent product 100 when it is reset with the buffer main plate 41 and when the end of the barrier plate 42 contacts the resin anchoring agent product 100, thus completing the rotation and reset.

[0043] Furthermore, the end of the barrier sub-plate 42 furthest from the buffer main plate 41 forms a semi-circular end, and a concave arc-shaped notch 421 is formed below the semi-circular end of the barrier sub-plate 42. The arc of the arc-shaped notch 421 is consistent with the arc of the resin anchoring agent finished product 100 circumference.

[0044] By setting an arc-shaped notch 421, when the barrier plate 42 rotates downward synchronously with the buffer plate 41, if there is an adjacent resin anchoring agent product 100 below, the arc-shaped notch 421 will fit onto the resin anchoring agent product 100. This not only forms a diagonal bracing structure to separate and support the resin anchoring agent product 100 above, but also expands the contact area between the barrier plate 42 and the resin anchoring agent product 100 below, thereby dispersing the pressure on the resin anchoring agent product 100 below, preventing the resin anchoring agent product 100 below from being damaged by pressure, and achieving a good protective effect.

[0045] The working principle of this utility model is as follows: During daily use, when the resin anchoring agent product 100 falls, the buffer plate 4 blocks the falling path of the resin anchoring agent product 100, and under the elastic force of the first torsion spring 5, it plays a buffering role on the resin anchoring agent product 100, thereby reducing the falling speed of the resin anchoring agent product 100 and preventing the resin anchoring agent product 100 from falling directly from a high height, resulting in collision damage.

[0046] When the resin anchoring agent finished product 100 falls, it squeezes the buffer main plate 41 and makes the buffer main plate 41 overcome the elastic force of the first torsion spring 5, so that the buffer main plate 41 and the barrier sub-plate 42 rotate synchronously along the first rotating shaft 411, and after rotation, it enters the receiving groove 31 to facilitate the falling of the resin anchoring agent finished product 100.

[0047] When the resin anchoring agent finished product 100 is located below the buffer barrier plate 4, the buffer main plate 41 rotates upward and resets under the elastic force of the first torsion spring 5, and drives the barrier sub plate 42 to rotate synchronously. When the upper end of the barrier sub plate 42 abuts against the side wall of the resin anchoring agent finished product 100, the barrier sub plate 42 rotates relative to the buffer main plate 41 along the second rotating shaft 423, which facilitates the reset of the buffer main plate 41 and the barrier sub plate 42, and avoids the disadvantage that the overall length of the buffer main plate 41 and the barrier sub plate 42 is too long to reset.

[0048] When there are adjacent resin anchoring agent finished products 100 below the buffer main board 41 and the barrier sub-board 42, and they are squeezed by the resin anchoring agent finished product 100 above, after the buffer main board 41 and the barrier sub-board 42 rotate, the arc-shaped notch 421 of the barrier sub-board 42 fits against the upper end of the resin anchoring agent finished product 100 and forms a diagonal brace. This separates the resin anchoring agent finished product 100 above from the resin anchoring agent finished product 100 below, which can prevent multiple resin anchoring agent finished products 100 entering the storage box 1 from being damaged due to mutual squeezing and collision. This greatly improves the safety of storing resin anchoring agent finished products 100 and increases the product qualification rate after storage.

[0049] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A resin anchoring agent finished product storage device, comprising a storage box (1), the upper end of the storage box (1) being covered with a box cover (2), and a plurality of vertically and evenly distributed partitions (3) fixed inside the storage box (1), the plurality of partitions (3) dividing the storage box (1) into a plurality of storage cavities adapted to the finished resin anchoring agent (100), characterized in that: The storage box (1) has receiving grooves (31) on the side walls on both sides of the opposite sides and on both sides of the partition (3). Each receiving groove (31) is rotatably connected to a buffer barrier plate (4). The buffer barrier plate (4) is elastically rotatably connected to the inside of the receiving groove (31) through a first torsion spring (5). The buffer barrier plate (4) is initially horizontal. When the resin anchoring agent finished product (100) falls, it squeezes the buffer barrier plate (4) and causes the buffer barrier plate (4) to rotate downward and enter the receiving groove (31). When there is an adjacent resin anchoring agent finished product (100) below the buffer barrier plate (4), the rear end of the buffer barrier plate (4) overlaps the upper part of the resin anchoring agent finished product (100) and forms a diagonal brace, so that the resin anchoring agent finished product (100) above is separated from the resin anchoring agent finished product (100) below.

2. The resin anchoring agent finished product storage device according to claim 1, characterized in that: The receiving groove (31) has circular grooves (32) on both sides, and the circular grooves (32) are located at the upper end of the receiving groove (31); the buffer barrier plate (4) includes a buffer main plate (41) and a barrier sub plate (42). The buffer main plate (41) has a first rotating shaft (411) with both ends rotatably inserted into the circular groove (32). The first torsion spring (5) is movably sleeved on the outside of the first rotating shaft (411). The two ends of the first torsion spring (5) are respectively fixed to the side wall of the buffer main plate (41) and the inner side wall of the receiving groove (31); the barrier sub plate (42) is rotatably connected to the front end of the buffer main plate (41) through a second rotating shaft (423). The barrier sub plate (42) rotates downwards by a maximum of 90° along the axis of the second rotating shaft (423).

3. The resin anchoring agent finished product storage device according to claim 2, characterized in that: The buffer main plate (41) has an installation groove (412) at one end near the barrier sub-plate (42). The barrier sub-plate (42) has a connecting block (422) fixedly embedded in the installation groove (412) at one end near the buffer main plate (41). The second rotating shaft (423) is fixedly inserted through the connecting block (422), and the two ends of the second rotating shaft (423) are respectively rotatably connected to the inner walls of the two sides of the installation groove (412). The bottom surface of the installation groove (412) and the side of the installation groove (412) near the barrier sub-plate (42) form an opening, and the upper part of the installation groove (412) forms a closed opening. When the barrier sub-plate (42) and the buffer main plate (41) form a unified plate, the upper side of the connecting block (422) is in close contact with the top of the installation groove (412).

4. A resin anchoring agent finished product storage device according to claim 3, characterized in that: The end of the barrier sub-plate (42) away from the buffer main plate (41) forms a semi-circular end, and a concave arc-shaped notch (421) is formed below the semi-circular end of the barrier sub-plate (42), the arc of which is consistent with the circumferential arc of the resin anchoring agent finished product (100).

5. A resin anchoring agent finished product storage device according to claim 3, characterized in that: The connecting block (422) has a second torsion spring (6) fixed on both sides. The end of the second torsion spring (6) away from the connecting block (422) is fixed to the inner wall of the mounting groove (412). The second torsion spring (6) is movably sleeved on the second rotating shaft (423).

6. A resin anchoring agent finished product storage device according to claim 1, characterized in that: Multiple pads (11) are fixed at the bottom of the storage box (1), and the multiple pads (11) are respectively located in multiple storage cavities inside the storage box (1); multiple limiting blocks (21) are fixed on the bottom surface of the box cover (2), and the multiple limiting blocks (21) are also distributed in multiple storage cavities of the storage box (1); arc-shaped grooves adapted to the resin anchoring agent finished product (100) are formed on both the pads (11) and the limiting blocks (21).